This concept describes bidirectional interdependence between bone ECM integrity and lysosomal functional homeostasis. The review presents it as a regulatory axis relevant to bone remodeling and osteoporosis.
First-pass extracted concept
bone matrix-lysosome crosstalk
Aliases
bone matrix-lysosome crosstalk, ECM-lysosome axis
Extracted Explainers
What the tool is doing
What problem it solves
What it does not solve
Evidence Snippets
emerging evidence has uncovered a critical bidirectional interdependence between the integrity of the extracellular matrix (ECM) and the functional homeostasis of the intracellular lysosomal system-an axis increasingly recognized as the "bone matrix-lysosome crosstalk."
Supporting Sources
Linked Claims
In osteoporosis, extracellular matrix structural compromise and lysosomal dysfunction reinforce one another to form a self-amplifying pathological loop.
During the progression of osteoporosis, structural compromise of the ECM and lysosomal dysfunction reinforce one another, establishing a self-amplifying pathological loop that accelerates the collapse of the bone microenvironment.
Bone extracellular matrix integrity and intracellular lysosomal homeostasis are bidirectionally interdependent in bone remodeling and osteoporosis.
emerging evidence has uncovered a critical bidirectional interdependence between the integrity of the extracellular matrix (ECM) and the functional homeostasis of the intracellular lysosomal system-an axis increasingly recognized as the "bone matrix-lysosome crosstalk."
The biochemical composition and biophysical properties of the extracellular matrix govern lysosomal acidification, metabolic coupling, and degradative capacity in bone-related contexts.
We highlight how the biochemical composition and biophysical properties of the ECM govern lysosomal acidification, metabolic coupling, and degradative capacity with remarkable precision.
Restoring dynamic equilibrium of the ECM-lysosome axis may be a mechanistic pivot for reversing osteoporotic degeneration.
we propose that restoring the dynamic equilibrium of the "ECM-lysosome axis" may represent a mechanistic pivot for reversing osteoporotic degeneration.